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Rheological and Dynamic Strain Rate Studies of Wax-Coated Granular Composites Used in Sports Surfaces

机译:用于运动表面的蜡涂颗粒状复合材料的流变和动态应变速率研究

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Dynamic mechanical thermal analysis (DMTA) tests were conducted on high-oil content, paraffin-based wax used in wax-coated granular composites. These composites make up the surface of synthetic Thoroughbred horse racetracks used in North America. The modulus and damping response from the DMTA tests were correlated with the dynamic triaxial shear strength response of the bulk track material taken at two different operational temperatures and at four strain rates. The purpose of these tests is to understand the mechanisms of shear strengthening of the bulk track material as the wax is heated through the first crystalline solid to liquid nominal transition temperature. Previous work using differential scanning calorimetry confirmed that under common operational surface temperatures, the wax coatings undergo distinct thermal transitions. The resulting increase in triaxial shear strength values affects the consistency of the racetrack which, in turn, can potentially affect Thoroughbred racing performance and safety of the track surface.
机译:动态机械热分析(DMTA)测试用于涂蜡的粒状复合材料中使用的高油含量石蜡基蜡。这些复合材料构成了北美使用的合成纯种赛马场的表面。 DMTA测试得出的模量和阻尼响应与在两种不同的操作温度和四种应变速率下获得的大体积轨道材料的动态三轴剪切强度响应相关。这些测试的目的是了解在将蜡加热通过第一结晶固体至液体标称转变温度时,散装物料的剪切增强机理。先前使用差示扫描量热法的工作证实,在常见的工作表面温度下,蜡涂层会经历明显的热转变。三轴抗剪强度值的增加会影响跑道的一致性,进而可能会影响纯种赛车的性能和赛道表面的安全性。

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